Iden­ti­fi­ca­tion

CAS Number

15305-07-4

Name

N-Nitroso-N-phenyl­hy­­drox­­y­lamine alu­minum salt CAS 15305-07-4

Syn­onyms

15305-07-4 [RN]
Alu­mini­um tris(2-oxo-1-phenylhydrazinolate) [ACD/IUPAC Name]
Aluminiumtris(2-oxo-1-phenylhydrazinolat) [Ger­man] [ACD/IUPAC Name]
ALU­MINUM N-NITROSOPHENYL­HY­­DROX­­Y­LAMINE
Alu­minum tris(2-oxo-1-phenylhydrazinolate)
Alu­minum-N-nitroso-N-phenyl­hy­­drox­­yamine
Ben­zenamine, N-hydroxy-N-nitroso-, alu­minum salt (3:1) [ACD/​Index Name]
Tris(2-oxo-1-phénylhydrazinolate) d’aluminium [French] [ACD/IUPAC Name]
Tris(N-nitroso-N-phenylhydroxylaminato)aluminum
98%
ALU­MINI­UM(3+) ION TRIS(N-NITROSO-N-OXI­DOANI­LINE)
ALU­MINI­UM(3+) TRIS(N-NITROSO-N-OXI­DOANI­LINE)
alu­minum N-oxi­­do-N-phenyl­ni­trous amide
Alu­minum, tris(N-(hydroxy-κO)-N-(nitroso-κO)benzenaminato)-
Alu­minum, tris(N-hydroxy-N-nitrosobenzenaminato-O,O’)-
Alu­minum, tris[N-(hydroxy-kO)-N-(nitroso-kO)benzenaminato]-
N-Nitroso-N-phenyl­hy­­drox­­y­lamine alu­minum salt
n-nitroso-n-phenyl­hy­­drox­­y­laminea­lu­minum­salt
QA-9529
Tris (N-nitroso-N-phenylhydroxylamine)?aluminum?salt
tris(N-hydroxy-N-nitrosophenylaminato-O,O’)aluminium

SMILES

c1ccc(cc1)N(N=O)[O-].c1ccc(cc1)N(N=O)[O-].c1ccc(cc1)N(N=O)[O-].[Al+3]

Std­InChI

InChI=1S/3C6H5N2O2.Al/​c39-7-8(10)6-4-2-1-3-5-6;/h31-5H;/q3*-1;+3

Std­InChIKey

PMSR­CBOGDIMQAT-UHF­F­­FAOYSA-N

Mol­e­c­u­lar Formula

C18H15AlN6O6

Mol­e­c­u­lar Weight

438.330

Prop­er­ties

Appear­ance

Off-white to light yel­low powder

Safe­ty Data

Sym­bol

Sig­nal Word

WGK Germany

3

MSDS Download

Spec­i­fi­ca­tions and Oth­er Infor­ma­tion of Our N-Nitroso-N-phenyl­hy­­drox­­y­lamine alu­minum salt CAS 15305-07-4

Iden­ti­fi­ca­tion Methods

Puri­ty

99% min

Melt­ing point

167~170ºC

Loss on drying

≤0.5%

Shelf Life

1 year

Stor­age

Under room tem­per­a­ture, Sealed and away from light

Known Appli­ca­tion

N-Nitroso-N-phenyl­hy­­drox­­y­lamine alu­minum salt is a high­ly effec­tive inhibitor. Its main func­tion is to extend the stor­age time of UV for­mu­las and pre­vent the self-poly­mer­iza­­­tion of UV coat­ings and ink for­mu­las dur­ing stor­age.
Pre­vent­ing self-poly­mer­iza­­­tion great­ly enhances the sta­bil­i­ty of UV for­mu­la­tions, ensur­ing that the phys­i­cal and chem­i­cal prop­er­ties remain unchanged dur­ing stor­age, there­by main­tain­ing their per­for­mance when used.
Extend­ing the stor­age life of UV for­mu­la­tions reduces the rate of prod­uct fail­ure, low­er­ing pro­duc­tion and inven­to­ry man­age­ment costs.
Sta­ble for­mu­la­tions reduce con­cerns about fluc­tu­a­tions in raw mate­r­i­al qual­i­ty and per­for­mance dur­ing pro­duc­tion, improv­ing pro­duc­tion effi­cien­cy.
Reduc­ing waste and loss helps low­er envi­ron­men­tal impact, align­ing with sus­tain­able devel­op­ment prin­ci­ples. Sta­ble prod­uct stor­age per­for­mance reduces the num­ber of expired chem­i­cals dis­card­ed, there­by low­er­ing the risk of envi­ron­men­tal pollution.

Gen­er­al View of Documents

This prod­uct is devel­oped by our R&D com­pa­ny Warshel Chem­i­cal Ltd (https://​www​.warshel​.com/).

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